Lee H, Zhou B, Feng H, Martin S E
Dept. of Food Science and Human Nutrition, Univ. of Illinois at Urbana-Champaign, 382F-AESB, 1304 W. Pennsylvania Ave., Urbana, IL 61801, USA.
J Food Sci. 2009 May-Jul;74(4):E191-8. doi: 10.1111/j.1750-3841.2009.01130.x.
The effect of pH on inactivation of Escherichia coli K12 by sonication at 100 kPa/40 degrees C, manosonication (MS) at 400 kPa/40 degrees C, thermosonication (TS) at 100 kPa/61 degrees C, and manothermosonication (MTS) at 400 kPa/61 degrees C at acoustic energy density of 3 W/mL and 6 W/mL was investigated. Five linear and nonlinear kinetic models were used to examine the inactivation kinetics. At all pH levels, the inactivation rates of E. coli K12 in a buffer by TS and MTS were significantly higher than those by sonication and MS. A 5 log reduction of E. coli K12 population by TS and MTS was achieved in 0.5 and 0.25 min, respectively. With an initial count of 10(8) CFU/mL, no colonies were detected at pH 3 after a 0.25-min MTS treatment. The lethal effect of MTS was enhanced at low pH (pHs 3 and 4), whereas at nonlethal temperature of 40 degrees C, no increased killing was observed. Regardless of pH, the treatment by MTS, TS, and MS exhibited a rapid initial reduction followed by tailing-off on the inactivation curves. The biphasic linear, log-logistic, and modified Gompertz kinetic models allowed better fitting of the inactivation data for MTS, TS, and MS treatments than the 1st-order and Weibull models. The survival counts of sonication-treated E. coli K12 at all pH levels fitted well to a 1st-order kinetic model.
研究了pH对大肠杆菌K12在100 kPa/40℃超声处理、400 kPa/40℃ manosonication(MS)、100 kPa/61℃热超声处理(TS)以及400 kPa/61℃ manothermosonication(MTS)下的失活影响,声能密度分别为3 W/mL和6 W/mL。使用了五个线性和非线性动力学模型来研究失活动力学。在所有pH水平下,缓冲液中大肠杆菌K12经TS和MTS处理后的失活率显著高于超声处理和MS处理。TS和MTS分别在0.5分钟和0.25分钟内实现了大肠杆菌K12数量5个对数级的减少。初始菌数为10⁸ CFU/mL时,经0.25分钟MTS处理后,在pH 3时未检测到菌落。MTS的致死作用在低pH(pH 3和4)时增强,而在40℃的非致死温度下,未观察到杀灭效果增加。无论pH如何,MTS、TS和MS处理在失活曲线上均呈现出快速的初始减少,随后趋于平缓。与一级模型和威布尔模型相比,双相线性、对数逻辑和修正的Gompertz动力学模型能更好地拟合MTS、TS和MS处理的失活数据。在所有pH水平下,超声处理的大肠杆菌K12存活菌数均很好地拟合一级动力学模型。